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基于H型鋼殘余應力主動控制的矯直工藝設計

Process design based on active residual stress control of H-beams during a straightening process

  • 摘要: 針對H型鋼輥式矯直過程殘余應力的主動控制,基于工程彈塑性理論建立一種矯直過程應力演變的分析模型;采用離散解析實現對模型的快速數值求解;繼而基于該分析模型建立一套能夠實現殘余應力主動控制的工藝參數主動設計方法;運用該方法對典型規格H型鋼矯直工藝參數進行工藝設計.建立的分析模型運算結果與有限元結果吻合且計算成本得到有效控制,模型能夠實現有限時間內整個矯直工藝參數域內殘余應力演變結果的分析;工藝設計方法能夠得到一定目標參數和約束條件下的殘余應力主動控制工藝參數.

     

    Abstract: Aiming at the active residual stress control of H-beams during a roller straightening process,an analysis model of stress evolution during the straightening process is constructed based on the elastic-plastic theory. A numerical solution method to quickly deal with the analysis model is investigated by discrete analysis. Then,an active design method of process parameters that can realize active residual stress control is established according to the analysis model. By using this method,process parameters are designed for typical specification H-beam straightening. Calculated results using the analysis model match those by a finite element method well and the analysis model makes the computational cost saved. The analysis model can achieve the result analysis of residual stress evolution within the feasible region in limited time. The process design method can get the process parameters of active control under specific target parameters and constraint conditions.

     

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